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Elastocaloric heat pumping using a shape memory alloy foil device

机译:使用形状记忆合金箔装置的弹性热泵

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This paper explores, develops and demonstrates a miniature heat pump based on the elastocaloric effect in shape memory alloys (SMAs). The active material is a TiNiFe foil of 30 µm thickness showing a maximum temperature change during pseudoelastic loading/unloading up to +20/−16 K. This effect is implemented in a heat pump design consisting of SMA bridge, heat source and sink. First-of-its-kind demonstrators reveal a temperature difference between source and sink of about 7 K after 100 s for a ratio of heat capacities of SMA bridge and heat source of 1∶85. The coefficient of performance (COP) of the device for cooling is 2.8 whereas the theoretical COP of the material is 10.5.
机译:本文探索,开发和演示了基于弹性记忆效应的形状记忆合金(SMA)中的微型热泵。活性材料是厚度为30 µm的TiNiFe箔,在伪弹性加载/卸载过程中,最大温度变化高达+ 20 / −16K。这种效果在由SMA桥,热源和散热片组成的热泵设计中实现。同类产品的第一个演示者显示,在SMA桥和热源的热容量比为1∶85的情况下,源与宿之间的温度差在100 s后约为7K。冷却装置的性能系数(COP)为2.8,而材料的理论COP为10.5。

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